Purification of Photorhabdus Virulence Cassette (PVC) Protein Complexes from Escherichia coli for Artificial Translocation of Heterologous Cargo Proteins

IF 1 Q3 BIOLOGY
Yueying Wang, Xinting Zhang, Xiao Feng, Xia Wang, Qi Jin, Feng Jiang
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引用次数: 0

Abstract

Contractile injection systems (CISs), one of the most important bacterial secretion systems that transport substrates across the membrane, are a collection of diverse but evolutionarily related macromolecular devices. Numerous effector proteins can be loaded and injected by this secretion complex to their specific destinations. One group of CISs called extracellular CIS (eCIS) has been proposed as secretory molecules that can be released from the bacterial cytoplasm and attack neighboring target cells from the extracellular environment. This makes them a potential delivery vector for the transportation of various cargos without the inclusion of bacterial cells, which might elicit certain immunological responses from hosts. We have demonstrated that the Photorhabdus virulence cassette (PVC), which is a typical eCIS, could be applied as an ideal vector for the translocation of proteinaceous cargos with different physical or chemical properties. Here, we describe the in-depth purification protocol of this mega complex from Escherichia coli. The protocol provided is a simpler, faster, and more productive way of generating the eCIS complexes than available methodologies reported previously, which can facilitate the subsequent applications of these nanodevices and other eCIS in different backgrounds.
从大肠杆菌中纯化用于人工转运异源货物蛋白的光毒性盒带(PVC)蛋白复合物
收缩注射系统(CIS)是跨膜运输底物的最重要的细菌分泌系统之一,它由多种多样但在进化过程中又相互关联的大分子装置组成。这种分泌复合体可装载大量效应蛋白并将其注入特定目的地。有一类 CIS 被称为细胞外 CIS(eCIS),是一种分泌分子,可从细菌细胞质中释放出来,从细胞外环境攻击邻近的靶细胞。这使它们成为运输各种载体的潜在载体,而不包含可能引起宿主某些免疫反应的细菌细胞。我们已经证明,光照杆菌毒力盒(PVC)作为一种典型的 eCIS,可以作为转运具有不同物理或化学性质的蛋白质货物的理想载体。在此,我们介绍了从大肠杆菌中深入纯化这种巨型复合物的方案。与之前报道的现有方法相比,该方案是一种更简单、更快速、更有效的生成 eCIS 复合物的方法,有助于这些纳米器件和其他 eCIS 在不同背景下的后续应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
1.50
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0.00%
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